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Published on: February 20, 2015
Ciliary phenotyping in renal epithelial cells in a cranioectodermal dysplasia patient with WDR35 variants
Joanna Walczak-Sztulpa1, Anna Wawrocka1, Łukasz Kuszel1
1Department of Medical Genetics, Poznan University of Medical Sciences, Poznan, Poland.
Insights
Cranioectodermal dysplasia (CED), a ciliopathy, is linked to kidney disease. This study found wider and longer cilia in renal cells of a CED patient, suggesting cilia abnormalities contribute to chronic kidney disease in CED patients.
Area of Science:
- Genetics
- Cell Biology
- Nephrology
Background:
- Cranioectodermal dysplasia (CED) is an autosomal recessive ciliopathy with diverse clinical manifestations, including renal insufficiency.
- Genetic variants in six genes (WDR35, IFT122, IFT140, IFT144, IFT52, IFT43) are currently known to cause CED.
- CED patients often present with facial dysmorphisms, skeletal abnormalities, and ectodermal defects.
Purpose of the Study:
- To investigate cilium morphology in renal epithelial cells from a Cranioectodermal dysplasia patient with chronic kidney disease.
- To compare ciliary characteristics between the affected individual and healthy controls using human urine-derived renal epithelial cells (hURECs).
Main Methods:
- Genetic analysis of the WDR35 gene in the affected individual.
- Immunofluorescence (IF) experiments on hURECs to assess ciliary frequency and morphology (length, height, width).
- Confocal microscopy and IMARIS software for detailed analysis of ciliary structures.
Main Results:
- Identified a known nonsense variant (p.Leu641*) and a novel missense variant (p.Ala1027Thr) in the WDR35 gene.
- Detected a microdeletion on chromosome 7q31.1 in the patient.
- Observed significantly wider and longer cilia in the CED patient's hURECs compared to controls.
Conclusions:
- Cilia abnormalities in renal epithelial cells are associated with second-stage chronic kidney disease in Cranioectodermal dysplasia patients.
- The findings highlight the potential role of WDR35 variants and associated cilia defects in CED-related renal dysfunction.
- Human urine-derived renal epithelial cells (hURECs) serve as a valuable tool for functional testing in ciliopathies.
Abstract:
Background: Cranioectodermal dysplasia (CED) is a skeletal autosomal recessive ciliopathy. The characteristic clinical features of CED are facial dysmorphisms, short limbs, narrow thorax, brachydactyly, ectodermal abnormalities, and renal insufficiency. Thus far, variants in six genes are known to be associated with this disorder: WDR35, IFT122, IFT140, IFT144, IFT52, and IFT43. Objective: The goal of this study was to perform cilium phenotyping in human urine-derived renal epithelial cells (hURECs) from a CED patient diagnosed with second-stage chronic kidney disease (CKD) and three unrelated and unaffected pediatric controls. Methods: Genetic analysis by WDR35 screening was performed in the affected individual. Cilium frequency and morphology, including cilium length, height, and width, were evaluated by immunofluorescence (IF) experiments in hURECs using two markers visualizing the ciliary axoneme (Acet-Tub and ARL13B) and the base of the cilium (PCNT). The IF results were analyzed using a confocal microscope and IMARIS software. Results: WDR35 analysis revealed the presence of a known nonsense p. (Leu641*) variant and a novel missense variant p. (Ala1027Thr). Moreover, comparative genomic hybridization analysis showed that the patient carries a microdeletion on chromosome 7q31.1. Ciliary phenotyping performed on hURECs showed morphological differences in the patient's cilia as compared to the three controls. The cilia of the CED patient were significantly wider and longer. Conclusion: The obtained results suggest that CED-related second-stage CKD might be associated with cilia abnormalities, as identified in renal epithelial cells from a CED patient harboring variants in WDR35. This study points out the added value of hURECs in functional testing for ciliopathies.
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